tda19988.c revision 1.3.2.2 1 1.3.2.2 martin /* $NetBSD: tda19988.c,v 1.3.2.2 2019/11/27 13:46:45 martin Exp $ */
2 1.3.2.2 martin
3 1.3.2.2 martin /*-
4 1.3.2.2 martin * Copyright (c) 2015 Oleksandr Tymoshenko <gonzo (at) freebsd.org>
5 1.3.2.2 martin * All rights reserved.
6 1.3.2.2 martin *
7 1.3.2.2 martin * Redistribution and use in source and binary forms, with or without
8 1.3.2.2 martin * modification, are permitted provided that the following conditions
9 1.3.2.2 martin * are met:
10 1.3.2.2 martin * 1. Redistributions of source code must retain the above copyright
11 1.3.2.2 martin * notice, this list of conditions and the following disclaimer.
12 1.3.2.2 martin * 2. Redistributions in binary form must reproduce the above copyright
13 1.3.2.2 martin * notice, this list of conditions and the following disclaimer in the
14 1.3.2.2 martin * documentation and/or other materials provided with the distribution.
15 1.3.2.2 martin *
16 1.3.2.2 martin * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17 1.3.2.2 martin * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18 1.3.2.2 martin * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19 1.3.2.2 martin * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20 1.3.2.2 martin * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21 1.3.2.2 martin * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22 1.3.2.2 martin * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23 1.3.2.2 martin * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24 1.3.2.2 martin * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25 1.3.2.2 martin * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26 1.3.2.2 martin * SUCH DAMAGE.
27 1.3.2.2 martin */
28 1.3.2.2 martin
29 1.3.2.2 martin #include <sys/cdefs.h>
30 1.3.2.2 martin __KERNEL_RCSID(0, "$NetBSD: tda19988.c,v 1.3.2.2 2019/11/27 13:46:45 martin Exp $");
31 1.3.2.2 martin
32 1.3.2.2 martin /*
33 1.3.2.2 martin * NXP TDA19988 HDMI encoder
34 1.3.2.2 martin */
35 1.3.2.2 martin #include <sys/param.h>
36 1.3.2.2 martin #include <sys/systm.h>
37 1.3.2.2 martin #include <sys/kernel.h>
38 1.3.2.2 martin #include <sys/time.h>
39 1.3.2.2 martin #include <sys/bus.h>
40 1.3.2.2 martin #include <sys/types.h>
41 1.3.2.2 martin
42 1.3.2.2 martin #include <dev/i2c/i2cvar.h>
43 1.3.2.2 martin #include <dev/i2c/ddcvar.h>
44 1.3.2.2 martin #include <dev/i2c/ddcreg.h>
45 1.3.2.2 martin
46 1.3.2.2 martin #include <dev/fdt/fdtvar.h>
47 1.3.2.2 martin #include <dev/fdt/fdt_port.h>
48 1.3.2.2 martin
49 1.3.2.2 martin #include <dev/videomode/videomode.h>
50 1.3.2.2 martin #include <dev/videomode/edidvar.h>
51 1.3.2.2 martin
52 1.3.2.2 martin #include <drm/drmP.h>
53 1.3.2.2 martin #include <drm/drm_crtc.h>
54 1.3.2.2 martin #include <drm/drm_crtc_helper.h>
55 1.3.2.2 martin #include <drm/drm_edid.h>
56 1.3.2.2 martin
57 1.3.2.2 martin enum {
58 1.3.2.2 martin TDA19988_PORT_INPUT = 0
59 1.3.2.2 martin };
60 1.3.2.2 martin
61 1.3.2.2 martin #define MKREG(page, addr) (((page) << 8) | (addr))
62 1.3.2.2 martin
63 1.3.2.2 martin #define REGPAGE(reg) (((reg) >> 8) & 0xff)
64 1.3.2.2 martin #define REGADDR(reg) ((reg) & 0xff)
65 1.3.2.2 martin
66 1.3.2.2 martin #define TDA_VERSION MKREG(0x00, 0x00)
67 1.3.2.2 martin #define TDA_MAIN_CNTRL0 MKREG(0x00, 0x01)
68 1.3.2.2 martin #define MAIN_CNTRL0_SR (1 << 0)
69 1.3.2.2 martin #define TDA_VERSION_MSB MKREG(0x00, 0x02)
70 1.3.2.2 martin #define TDA_SOFTRESET MKREG(0x00, 0x0a)
71 1.3.2.2 martin #define SOFTRESET_I2C (1 << 1)
72 1.3.2.2 martin #define SOFTRESET_AUDIO (1 << 0)
73 1.3.2.2 martin #define TDA_DDC_CTRL MKREG(0x00, 0x0b)
74 1.3.2.2 martin #define DDC_ENABLE 0
75 1.3.2.2 martin #define TDA_CCLK MKREG(0x00, 0x0c)
76 1.3.2.2 martin #define CCLK_ENABLE 1
77 1.3.2.2 martin #define TDA_INT_FLAGS_2 MKREG(0x00, 0x11)
78 1.3.2.2 martin #define INT_FLAGS_2_EDID_BLK_RD (1 << 1)
79 1.3.2.2 martin
80 1.3.2.2 martin #define TDA_VIP_CNTRL_0 MKREG(0x00, 0x20)
81 1.3.2.2 martin #define TDA_VIP_CNTRL_1 MKREG(0x00, 0x21)
82 1.3.2.2 martin #define TDA_VIP_CNTRL_2 MKREG(0x00, 0x22)
83 1.3.2.2 martin #define TDA_VIP_CNTRL_3 MKREG(0x00, 0x23)
84 1.3.2.2 martin #define VIP_CNTRL_3_SYNC_HS (2 << 4)
85 1.3.2.2 martin #define VIP_CNTRL_3_V_TGL (1 << 2)
86 1.3.2.2 martin #define VIP_CNTRL_3_H_TGL (1 << 1)
87 1.3.2.2 martin
88 1.3.2.2 martin #define TDA_VIP_CNTRL_4 MKREG(0x00, 0x24)
89 1.3.2.2 martin #define VIP_CNTRL_4_BLANKIT_NDE (0 << 2)
90 1.3.2.2 martin #define VIP_CNTRL_4_BLANKIT_HS_VS (1 << 2)
91 1.3.2.2 martin #define VIP_CNTRL_4_BLANKIT_NHS_VS (2 << 2)
92 1.3.2.2 martin #define VIP_CNTRL_4_BLANKIT_HE_VE (3 << 2)
93 1.3.2.2 martin #define VIP_CNTRL_4_BLC_NONE (0 << 0)
94 1.3.2.2 martin #define VIP_CNTRL_4_BLC_RGB444 (1 << 0)
95 1.3.2.2 martin #define VIP_CNTRL_4_BLC_YUV444 (2 << 0)
96 1.3.2.2 martin #define VIP_CNTRL_4_BLC_YUV422 (3 << 0)
97 1.3.2.2 martin #define TDA_VIP_CNTRL_5 MKREG(0x00, 0x25)
98 1.3.2.2 martin #define VIP_CNTRL_5_SP_CNT(n) (((n) & 3) << 1)
99 1.3.2.2 martin #define TDA_MUX_VP_VIP_OUT MKREG(0x00, 0x27)
100 1.3.2.2 martin #define TDA_MAT_CONTRL MKREG(0x00, 0x80)
101 1.3.2.2 martin #define MAT_CONTRL_MAT_BP (1 << 2)
102 1.3.2.2 martin #define TDA_VIDFORMAT MKREG(0x00, 0xa0)
103 1.3.2.2 martin #define TDA_REFPIX_MSB MKREG(0x00, 0xa1)
104 1.3.2.2 martin #define TDA_REFPIX_LSB MKREG(0x00, 0xa2)
105 1.3.2.2 martin #define TDA_REFLINE_MSB MKREG(0x00, 0xa3)
106 1.3.2.2 martin #define TDA_REFLINE_LSB MKREG(0x00, 0xa4)
107 1.3.2.2 martin #define TDA_NPIX_MSB MKREG(0x00, 0xa5)
108 1.3.2.2 martin #define TDA_NPIX_LSB MKREG(0x00, 0xa6)
109 1.3.2.2 martin #define TDA_NLINE_MSB MKREG(0x00, 0xa7)
110 1.3.2.2 martin #define TDA_NLINE_LSB MKREG(0x00, 0xa8)
111 1.3.2.2 martin #define TDA_VS_LINE_STRT_1_MSB MKREG(0x00, 0xa9)
112 1.3.2.2 martin #define TDA_VS_LINE_STRT_1_LSB MKREG(0x00, 0xaa)
113 1.3.2.2 martin #define TDA_VS_PIX_STRT_1_MSB MKREG(0x00, 0xab)
114 1.3.2.2 martin #define TDA_VS_PIX_STRT_1_LSB MKREG(0x00, 0xac)
115 1.3.2.2 martin #define TDA_VS_LINE_END_1_MSB MKREG(0x00, 0xad)
116 1.3.2.2 martin #define TDA_VS_LINE_END_1_LSB MKREG(0x00, 0xae)
117 1.3.2.2 martin #define TDA_VS_PIX_END_1_MSB MKREG(0x00, 0xaf)
118 1.3.2.2 martin #define TDA_VS_PIX_END_1_LSB MKREG(0x00, 0xb0)
119 1.3.2.2 martin #define TDA_VS_LINE_STRT_2_MSB MKREG(0x00, 0xb1)
120 1.3.2.2 martin #define TDA_VS_LINE_STRT_2_LSB MKREG(0x00, 0xb2)
121 1.3.2.2 martin #define TDA_VS_PIX_STRT_2_MSB MKREG(0x00, 0xb3)
122 1.3.2.2 martin #define TDA_VS_PIX_STRT_2_LSB MKREG(0x00, 0xb4)
123 1.3.2.2 martin #define TDA_VS_LINE_END_2_MSB MKREG(0x00, 0xb5)
124 1.3.2.2 martin #define TDA_VS_LINE_END_2_LSB MKREG(0x00, 0xb6)
125 1.3.2.2 martin #define TDA_VS_PIX_END_2_MSB MKREG(0x00, 0xb7)
126 1.3.2.2 martin #define TDA_VS_PIX_END_2_LSB MKREG(0x00, 0xb8)
127 1.3.2.2 martin #define TDA_HS_PIX_START_MSB MKREG(0x00, 0xb9)
128 1.3.2.2 martin #define TDA_HS_PIX_START_LSB MKREG(0x00, 0xba)
129 1.3.2.2 martin #define TDA_HS_PIX_STOP_MSB MKREG(0x00, 0xbb)
130 1.3.2.2 martin #define TDA_HS_PIX_STOP_LSB MKREG(0x00, 0xbc)
131 1.3.2.2 martin #define TDA_VWIN_START_1_MSB MKREG(0x00, 0xbd)
132 1.3.2.2 martin #define TDA_VWIN_START_1_LSB MKREG(0x00, 0xbe)
133 1.3.2.2 martin #define TDA_VWIN_END_1_MSB MKREG(0x00, 0xbf)
134 1.3.2.2 martin #define TDA_VWIN_END_1_LSB MKREG(0x00, 0xc0)
135 1.3.2.2 martin #define TDA_VWIN_START_2_MSB MKREG(0x00, 0xc1)
136 1.3.2.2 martin #define TDA_VWIN_START_2_LSB MKREG(0x00, 0xc2)
137 1.3.2.2 martin #define TDA_VWIN_END_2_MSB MKREG(0x00, 0xc3)
138 1.3.2.2 martin #define TDA_VWIN_END_2_LSB MKREG(0x00, 0xc4)
139 1.3.2.2 martin #define TDA_DE_START_MSB MKREG(0x00, 0xc5)
140 1.3.2.2 martin #define TDA_DE_START_LSB MKREG(0x00, 0xc6)
141 1.3.2.2 martin #define TDA_DE_STOP_MSB MKREG(0x00, 0xc7)
142 1.3.2.2 martin #define TDA_DE_STOP_LSB MKREG(0x00, 0xc8)
143 1.3.2.2 martin
144 1.3.2.2 martin #define TDA_TBG_CNTRL_0 MKREG(0x00, 0xca)
145 1.3.2.2 martin #define TBG_CNTRL_0_SYNC_ONCE (1 << 7)
146 1.3.2.2 martin #define TBG_CNTRL_0_SYNC_MTHD (1 << 6)
147 1.3.2.2 martin
148 1.3.2.2 martin #define TDA_TBG_CNTRL_1 MKREG(0x00, 0xcb)
149 1.3.2.2 martin #define TBG_CNTRL_1_DWIN_DIS (1 << 6)
150 1.3.2.2 martin #define TBG_CNTRL_1_TGL_EN (1 << 2)
151 1.3.2.2 martin #define TBG_CNTRL_1_V_TGL (1 << 1)
152 1.3.2.2 martin #define TBG_CNTRL_1_H_TGL (1 << 0)
153 1.3.2.2 martin
154 1.3.2.2 martin #define TDA_HVF_CNTRL_0 MKREG(0x00, 0xe4)
155 1.3.2.2 martin #define HVF_CNTRL_0_PREFIL_NONE (0 << 2)
156 1.3.2.2 martin #define HVF_CNTRL_0_INTPOL_BYPASS (0 << 0)
157 1.3.2.2 martin #define TDA_HVF_CNTRL_1 MKREG(0x00, 0xe5)
158 1.3.2.2 martin #define HVF_CNTRL_1_VQR(x) (((x) & 3) << 2)
159 1.3.2.2 martin #define HVF_CNTRL_1_VQR_FULL HVF_CNTRL_1_VQR(0)
160 1.3.2.2 martin #define TDA_ENABLE_SPACE MKREG(0x00, 0xd6)
161 1.3.2.2 martin #define TDA_RPT_CNTRL MKREG(0x00, 0xf0)
162 1.3.2.2 martin
163 1.3.2.2 martin #define TDA_PLL_SERIAL_1 MKREG(0x02, 0x00)
164 1.3.2.2 martin #define PLL_SERIAL_1_SRL_MAN_IP (1 << 6)
165 1.3.2.2 martin #define TDA_PLL_SERIAL_2 MKREG(0x02, 0x01)
166 1.3.2.2 martin #define PLL_SERIAL_2_SRL_PR(x) (((x) & 0xf) << 4)
167 1.3.2.2 martin #define PLL_SERIAL_2_SRL_NOSC(x) (((x) & 0x3) << 0)
168 1.3.2.2 martin #define TDA_PLL_SERIAL_3 MKREG(0x02, 0x02)
169 1.3.2.2 martin #define PLL_SERIAL_3_SRL_PXIN_SEL (1 << 4)
170 1.3.2.2 martin #define PLL_SERIAL_3_SRL_DE (1 << 2)
171 1.3.2.2 martin #define PLL_SERIAL_3_SRL_CCIR (1 << 0)
172 1.3.2.2 martin #define TDA_SERIALIZER MKREG(0x02, 0x03)
173 1.3.2.2 martin #define TDA_BUFFER_OUT MKREG(0x02, 0x04)
174 1.3.2.2 martin #define TDA_PLL_SCG1 MKREG(0x02, 0x05)
175 1.3.2.2 martin #define TDA_PLL_SCG2 MKREG(0x02, 0x06)
176 1.3.2.2 martin #define TDA_PLL_SCGN1 MKREG(0x02, 0x07)
177 1.3.2.2 martin #define TDA_PLL_SCGN2 MKREG(0x02, 0x08)
178 1.3.2.2 martin #define TDA_PLL_SCGR1 MKREG(0x02, 0x09)
179 1.3.2.2 martin #define TDA_PLL_SCGR2 MKREG(0x02, 0x0a)
180 1.3.2.2 martin
181 1.3.2.2 martin #define TDA_SEL_CLK MKREG(0x02, 0x11)
182 1.3.2.2 martin #define SEL_CLK_ENA_SC_CLK (1 << 3)
183 1.3.2.2 martin #define SEL_CLK_SEL_VRF_CLK(x) (((x) & 3) << 1)
184 1.3.2.2 martin #define SEL_CLK_SEL_CLK1 (1 << 0)
185 1.3.2.2 martin #define TDA_ANA_GENERAL MKREG(0x02, 0x12)
186 1.3.2.2 martin
187 1.3.2.2 martin #define TDA_EDID_DATA0 MKREG(0x09, 0x00)
188 1.3.2.2 martin #define TDA_EDID_CTRL MKREG(0x09, 0xfa)
189 1.3.2.2 martin #define TDA_DDC_ADDR MKREG(0x09, 0xfb)
190 1.3.2.2 martin #define TDA_DDC_OFFS MKREG(0x09, 0xfc)
191 1.3.2.2 martin #define TDA_DDC_SEGM_ADDR MKREG(0x09, 0xfd)
192 1.3.2.2 martin #define TDA_DDC_SEGM MKREG(0x09, 0xfe)
193 1.3.2.2 martin
194 1.3.2.2 martin #define TDA_IF_VSP MKREG(0x10, 0x20)
195 1.3.2.2 martin #define TDA_IF_AVI MKREG(0x10, 0x40)
196 1.3.2.2 martin #define TDA_IF_SPD MKREG(0x10, 0x60)
197 1.3.2.2 martin #define TDA_IF_AUD MKREG(0x10, 0x80)
198 1.3.2.2 martin #define TDA_IF_MPS MKREG(0x10, 0xa0)
199 1.3.2.2 martin
200 1.3.2.2 martin #define TDA_ENC_CNTRL MKREG(0x11, 0x0d)
201 1.3.2.2 martin #define ENC_CNTRL_DVI_MODE (0 << 2)
202 1.3.2.2 martin #define ENC_CNTRL_HDMI_MODE (1 << 2)
203 1.3.2.2 martin #define TDA_DIP_IF_FLAGS MKREG(0x11, 0x0f)
204 1.3.2.2 martin #define DIP_IF_FLAGS_IF5 (1 << 5)
205 1.3.2.2 martin #define DIP_IF_FLAGS_IF4 (1 << 4)
206 1.3.2.2 martin #define DIP_IF_FLAGS_IF3 (1 << 3)
207 1.3.2.2 martin #define DIP_IF_FLAGS_IF2 (1 << 2) /* AVI IF on page 10h */
208 1.3.2.2 martin #define DIP_IF_FLAGS_IF1 (1 << 1)
209 1.3.2.2 martin
210 1.3.2.2 martin #define TDA_TX3 MKREG(0x12, 0x9a)
211 1.3.2.2 martin #define TDA_TX4 MKREG(0x12, 0x9b)
212 1.3.2.2 martin #define TX4_PD_RAM (1 << 1)
213 1.3.2.2 martin #define TDA_HDCP_TX33 MKREG(0x12, 0xb8)
214 1.3.2.2 martin #define HDCP_TX33_HDMI (1 << 1)
215 1.3.2.2 martin
216 1.3.2.2 martin #define TDA_CURPAGE_ADDR 0xff
217 1.3.2.2 martin
218 1.3.2.2 martin #define TDA_CEC_RXSHPDLEV 0xfe
219 1.3.2.2 martin #define RXSHPDLEV_HPD __BIT(1)
220 1.3.2.2 martin
221 1.3.2.2 martin #define TDA_CEC_ENAMODS 0xff
222 1.3.2.2 martin #define ENAMODS_RXSENS (1 << 2)
223 1.3.2.2 martin #define ENAMODS_HDMI (1 << 1)
224 1.3.2.2 martin #define TDA_CEC_FRO_IM_CLK_CTRL 0xfb
225 1.3.2.2 martin #define CEC_FRO_IM_CLK_CTRL_GHOST_DIS (1 << 7)
226 1.3.2.2 martin #define CEC_FRO_IM_CLK_CTRL_IMCLK_SEL (1 << 1)
227 1.3.2.2 martin
228 1.3.2.2 martin /* EDID reading */
229 1.3.2.2 martin #define MAX_READ_ATTEMPTS 100
230 1.3.2.2 martin
231 1.3.2.2 martin /* EDID fields */
232 1.3.2.2 martin #define EDID_MODES0 35
233 1.3.2.2 martin #define EDID_MODES1 36
234 1.3.2.2 martin #define EDID_TIMING_START 38
235 1.3.2.2 martin #define EDID_TIMING_END 54
236 1.3.2.2 martin #define EDID_TIMING_X(v) (((v) + 31) * 8)
237 1.3.2.2 martin #define EDID_FREQ(v) (((v) & 0x3f) + 60)
238 1.3.2.2 martin #define EDID_RATIO(v) (((v) >> 6) & 0x3)
239 1.3.2.2 martin #define EDID_RATIO_10x16 0
240 1.3.2.2 martin #define EDID_RATIO_3x4 1
241 1.3.2.2 martin #define EDID_RATIO_4x5 2
242 1.3.2.2 martin #define EDID_RATIO_9x16 3
243 1.3.2.2 martin
244 1.3.2.2 martin #define TDA19988 0x0301
245 1.3.2.2 martin
246 1.3.2.2 martin static const struct device_compatible_entry compat_data[] = {
247 1.3.2.2 martin { "nxp,tda998x", 1 },
248 1.3.2.2 martin { NULL }
249 1.3.2.2 martin };
250 1.3.2.2 martin
251 1.3.2.2 martin struct tda19988_softc;
252 1.3.2.2 martin
253 1.3.2.2 martin struct tda19988_connector {
254 1.3.2.2 martin struct drm_connector base;
255 1.3.2.2 martin struct tda19988_softc *sc;
256 1.3.2.2 martin };
257 1.3.2.2 martin
258 1.3.2.2 martin struct tda19988_softc {
259 1.3.2.2 martin device_t sc_dev;
260 1.3.2.2 martin int sc_phandle;
261 1.3.2.2 martin i2c_tag_t sc_i2c;
262 1.3.2.2 martin i2c_addr_t sc_addr;
263 1.3.2.2 martin uint32_t sc_cec_addr;
264 1.3.2.2 martin uint16_t sc_version;
265 1.3.2.2 martin int sc_current_page;
266 1.3.2.2 martin uint8_t *sc_edid;
267 1.3.2.2 martin uint32_t sc_edid_len;
268 1.3.2.2 martin bool sc_edid_valid;
269 1.3.2.2 martin
270 1.3.2.2 martin struct drm_bridge sc_bridge;
271 1.3.2.2 martin struct tda19988_connector sc_connector;
272 1.3.2.2 martin
273 1.3.2.2 martin struct fdt_device_ports sc_ports;
274 1.3.2.2 martin
275 1.3.2.2 martin enum drm_connector_status sc_last_status;
276 1.3.2.2 martin };
277 1.3.2.2 martin
278 1.3.2.2 martin #define to_tda_connector(x) container_of(x, struct tda19988_connector, base)
279 1.3.2.2 martin
280 1.3.2.2 martin static int
281 1.3.2.2 martin tda19988_set_page(struct tda19988_softc *sc, uint8_t page)
282 1.3.2.2 martin {
283 1.3.2.2 martin uint8_t buf[2] = { TDA_CURPAGE_ADDR, page };
284 1.3.2.2 martin int result;
285 1.3.2.2 martin
286 1.3.2.2 martin result = iic_exec(sc->sc_i2c, I2C_OP_WRITE_WITH_STOP, sc->sc_addr, buf, 2, NULL, 0,
287 1.3.2.2 martin cold ? I2C_F_POLL : 0);
288 1.3.2.2 martin if (result == 0)
289 1.3.2.2 martin sc->sc_current_page = page;
290 1.3.2.2 martin
291 1.3.2.2 martin return result;
292 1.3.2.2 martin }
293 1.3.2.2 martin
294 1.3.2.2 martin static int
295 1.3.2.2 martin tda19988_cec_read(struct tda19988_softc *sc, uint8_t addr, uint8_t *data)
296 1.3.2.2 martin {
297 1.3.2.2 martin return iic_exec(sc->sc_i2c, I2C_OP_READ_WITH_STOP, sc->sc_cec_addr, &addr, 1, data, 1,
298 1.3.2.2 martin cold ? I2C_F_POLL : 0);
299 1.3.2.2 martin }
300 1.3.2.2 martin
301 1.3.2.2 martin static int
302 1.3.2.2 martin tda19988_cec_write(struct tda19988_softc *sc, uint8_t addr, uint8_t data)
303 1.3.2.2 martin {
304 1.3.2.2 martin uint8_t buf[2] = { addr, data };
305 1.3.2.2 martin
306 1.3.2.2 martin return iic_exec(sc->sc_i2c, I2C_OP_WRITE_WITH_STOP, sc->sc_cec_addr, buf, 2, NULL, 0,
307 1.3.2.2 martin cold ? I2C_F_POLL : 0);
308 1.3.2.2 martin }
309 1.3.2.2 martin
310 1.3.2.2 martin static int
311 1.3.2.2 martin tda19988_block_read(struct tda19988_softc *sc, uint16_t addr, uint8_t *data, int len)
312 1.3.2.2 martin {
313 1.3.2.2 martin uint8_t reg;
314 1.3.2.2 martin
315 1.3.2.2 martin reg = REGADDR(addr);
316 1.3.2.2 martin
317 1.3.2.2 martin if (sc->sc_current_page != REGPAGE(addr))
318 1.3.2.2 martin tda19988_set_page(sc, REGPAGE(addr));
319 1.3.2.2 martin
320 1.3.2.2 martin return iic_exec(sc->sc_i2c, I2C_OP_READ_WITH_STOP, sc->sc_addr, ®, 1, data, len,
321 1.3.2.2 martin cold ? I2C_F_POLL : 0);
322 1.3.2.2 martin }
323 1.3.2.2 martin
324 1.3.2.2 martin static int
325 1.3.2.2 martin tda19988_reg_read(struct tda19988_softc *sc, uint16_t addr, uint8_t *data)
326 1.3.2.2 martin {
327 1.3.2.2 martin uint8_t reg;
328 1.3.2.2 martin
329 1.3.2.2 martin reg = REGADDR(addr);
330 1.3.2.2 martin
331 1.3.2.2 martin if (sc->sc_current_page != REGPAGE(addr))
332 1.3.2.2 martin tda19988_set_page(sc, REGPAGE(addr));
333 1.3.2.2 martin
334 1.3.2.2 martin return iic_exec(sc->sc_i2c, I2C_OP_READ_WITH_STOP, sc->sc_addr, ®, 1, data, 1,
335 1.3.2.2 martin cold ? I2C_F_POLL : 0);
336 1.3.2.2 martin }
337 1.3.2.2 martin
338 1.3.2.2 martin static int
339 1.3.2.2 martin tda19988_reg_write(struct tda19988_softc *sc, uint16_t addr, uint8_t data)
340 1.3.2.2 martin {
341 1.3.2.2 martin uint8_t buf[2] = { REGADDR(addr), data };
342 1.3.2.2 martin
343 1.3.2.2 martin if (sc->sc_current_page != REGPAGE(addr))
344 1.3.2.2 martin tda19988_set_page(sc, REGPAGE(addr));
345 1.3.2.2 martin
346 1.3.2.2 martin return iic_exec(sc->sc_i2c, I2C_OP_WRITE_WITH_STOP, sc->sc_addr, buf, 2, NULL, 0,
347 1.3.2.2 martin cold ? I2C_F_POLL : 0);
348 1.3.2.2 martin }
349 1.3.2.2 martin
350 1.3.2.2 martin static int
351 1.3.2.2 martin tda19988_reg_write2(struct tda19988_softc *sc, uint16_t address, uint16_t data)
352 1.3.2.2 martin {
353 1.3.2.2 martin uint8_t buf[3];
354 1.3.2.2 martin
355 1.3.2.2 martin buf[0] = REGADDR(address);
356 1.3.2.2 martin buf[1] = (data >> 8);
357 1.3.2.2 martin buf[2] = (data & 0xff);
358 1.3.2.2 martin
359 1.3.2.2 martin if (sc->sc_current_page != REGPAGE(address))
360 1.3.2.2 martin tda19988_set_page(sc, REGPAGE(address));
361 1.3.2.2 martin
362 1.3.2.2 martin return iic_exec(sc->sc_i2c, I2C_OP_READ_WITH_STOP, sc->sc_addr, buf, 3, NULL, 0,
363 1.3.2.2 martin cold ? I2C_F_POLL : 0);
364 1.3.2.2 martin }
365 1.3.2.2 martin
366 1.3.2.2 martin static void
367 1.3.2.2 martin tda19988_reg_set(struct tda19988_softc *sc, uint16_t addr, uint8_t flags)
368 1.3.2.2 martin {
369 1.3.2.2 martin uint8_t data;
370 1.3.2.2 martin
371 1.3.2.2 martin tda19988_reg_read(sc, addr, &data);
372 1.3.2.2 martin data |= flags;
373 1.3.2.2 martin tda19988_reg_write(sc, addr, data);
374 1.3.2.2 martin }
375 1.3.2.2 martin
376 1.3.2.2 martin static void
377 1.3.2.2 martin tda19988_reg_clear(struct tda19988_softc *sc, uint16_t addr, uint8_t flags)
378 1.3.2.2 martin {
379 1.3.2.2 martin uint8_t data;
380 1.3.2.2 martin
381 1.3.2.2 martin tda19988_reg_read(sc, addr, &data);
382 1.3.2.2 martin data &= ~flags;
383 1.3.2.2 martin tda19988_reg_write(sc, addr, data);
384 1.3.2.2 martin }
385 1.3.2.2 martin
386 1.3.2.2 martin static int
387 1.3.2.2 martin tda19988_match(device_t parent, cfdata_t match, void *aux)
388 1.3.2.2 martin {
389 1.3.2.2 martin struct i2c_attach_args * const ia = aux;
390 1.3.2.2 martin int match_result;
391 1.3.2.2 martin
392 1.3.2.2 martin if (iic_use_direct_match(ia, match, compat_data, &match_result))
393 1.3.2.2 martin return match_result;
394 1.3.2.2 martin
395 1.3.2.2 martin return 0;
396 1.3.2.2 martin }
397 1.3.2.2 martin
398 1.3.2.2 martin static void
399 1.3.2.2 martin tda19988_init_encoder(struct tda19988_softc *sc, const struct drm_display_mode *mode)
400 1.3.2.2 martin {
401 1.3.2.2 martin uint16_t ref_pix, ref_line, n_pix, n_line;
402 1.3.2.2 martin uint16_t hs_pix_start, hs_pix_stop;
403 1.3.2.2 martin uint16_t vs1_pix_start, vs1_pix_stop;
404 1.3.2.2 martin uint16_t vs1_line_start, vs1_line_end;
405 1.3.2.2 martin uint16_t vs2_pix_start, vs2_pix_stop;
406 1.3.2.2 martin uint16_t vs2_line_start, vs2_line_end;
407 1.3.2.2 martin uint16_t vwin1_line_start, vwin1_line_end;
408 1.3.2.2 martin uint16_t vwin2_line_start, vwin2_line_end;
409 1.3.2.2 martin uint16_t de_start, de_stop;
410 1.3.2.2 martin uint8_t reg, div;
411 1.3.2.2 martin
412 1.3.2.2 martin n_pix = mode->crtc_htotal;
413 1.3.2.2 martin n_line = mode->crtc_vtotal;
414 1.3.2.2 martin
415 1.3.2.2 martin hs_pix_stop = mode->crtc_hsync_end - mode->crtc_hdisplay;
416 1.3.2.2 martin hs_pix_start = mode->crtc_hsync_start - mode->crtc_hdisplay;
417 1.3.2.2 martin
418 1.3.2.2 martin de_stop = mode->crtc_htotal;
419 1.3.2.2 martin de_start = mode->crtc_htotal - mode->crtc_hdisplay;
420 1.3.2.2 martin ref_pix = hs_pix_start + 3;
421 1.3.2.2 martin
422 1.3.2.2 martin if (mode->flags & DRM_MODE_FLAG_HSKEW)
423 1.3.2.2 martin ref_pix += mode->crtc_hskew;
424 1.3.2.2 martin
425 1.3.2.2 martin if ((mode->flags & DRM_MODE_FLAG_INTERLACE) == 0) {
426 1.3.2.2 martin ref_line = 1 + mode->crtc_vsync_start - mode->crtc_vdisplay;
427 1.3.2.2 martin vwin1_line_start = mode->crtc_vtotal - mode->crtc_vdisplay - 1;
428 1.3.2.2 martin vwin1_line_end = vwin1_line_start + mode->crtc_vdisplay;
429 1.3.2.2 martin
430 1.3.2.2 martin vs1_pix_start = vs1_pix_stop = hs_pix_start;
431 1.3.2.2 martin vs1_line_start = mode->crtc_vsync_start - mode->crtc_vdisplay;
432 1.3.2.2 martin vs1_line_end = vs1_line_start + mode->crtc_vsync_end - mode->crtc_vsync_start;
433 1.3.2.2 martin
434 1.3.2.2 martin vwin2_line_start = vwin2_line_end = 0;
435 1.3.2.2 martin vs2_pix_start = vs2_pix_stop = 0;
436 1.3.2.2 martin vs2_line_start = vs2_line_end = 0;
437 1.3.2.2 martin } else {
438 1.3.2.2 martin ref_line = 1 + (mode->crtc_vsync_start - mode->crtc_vdisplay)/2;
439 1.3.2.2 martin vwin1_line_start = (mode->crtc_vtotal - mode->crtc_vdisplay)/2;
440 1.3.2.2 martin vwin1_line_end = vwin1_line_start + mode->crtc_vdisplay/2;
441 1.3.2.2 martin
442 1.3.2.2 martin vs1_pix_start = vs1_pix_stop = hs_pix_start;
443 1.3.2.2 martin vs1_line_start = (mode->crtc_vsync_start - mode->crtc_vdisplay)/2;
444 1.3.2.2 martin vs1_line_end = vs1_line_start + (mode->crtc_vsync_end - mode->crtc_vsync_start)/2;
445 1.3.2.2 martin
446 1.3.2.2 martin vwin2_line_start = vwin1_line_start + mode->crtc_vtotal/2;
447 1.3.2.2 martin vwin2_line_end = vwin2_line_start + mode->crtc_vdisplay/2;
448 1.3.2.2 martin
449 1.3.2.2 martin vs2_pix_start = vs2_pix_stop = hs_pix_start + mode->crtc_htotal/2;
450 1.3.2.2 martin vs2_line_start = vs1_line_start + mode->crtc_vtotal/2 ;
451 1.3.2.2 martin vs2_line_end = vs2_line_start + (mode->crtc_vsync_end - mode->crtc_vsync_start)/2;
452 1.3.2.2 martin }
453 1.3.2.2 martin
454 1.3.2.2 martin div = 148500 / mode->crtc_clock;
455 1.3.2.2 martin if (div != 0) {
456 1.3.2.2 martin div--;
457 1.3.2.2 martin if (div > 3)
458 1.3.2.2 martin div = 3;
459 1.3.2.2 martin }
460 1.3.2.2 martin
461 1.3.2.2 martin /* set HDMI HDCP mode off */
462 1.3.2.2 martin tda19988_reg_set(sc, TDA_TBG_CNTRL_1, TBG_CNTRL_1_DWIN_DIS);
463 1.3.2.2 martin tda19988_reg_clear(sc, TDA_HDCP_TX33, HDCP_TX33_HDMI);
464 1.3.2.2 martin tda19988_reg_write(sc, TDA_ENC_CNTRL, ENC_CNTRL_DVI_MODE);
465 1.3.2.2 martin
466 1.3.2.2 martin /* no pre-filter or interpolator */
467 1.3.2.2 martin tda19988_reg_write(sc, TDA_HVF_CNTRL_0,
468 1.3.2.2 martin HVF_CNTRL_0_INTPOL_BYPASS | HVF_CNTRL_0_PREFIL_NONE);
469 1.3.2.2 martin tda19988_reg_write(sc, TDA_VIP_CNTRL_5, VIP_CNTRL_5_SP_CNT(0));
470 1.3.2.2 martin tda19988_reg_write(sc, TDA_VIP_CNTRL_4,
471 1.3.2.2 martin VIP_CNTRL_4_BLANKIT_NDE | VIP_CNTRL_4_BLC_NONE);
472 1.3.2.2 martin
473 1.3.2.2 martin tda19988_reg_clear(sc, TDA_PLL_SERIAL_3, PLL_SERIAL_3_SRL_CCIR);
474 1.3.2.2 martin tda19988_reg_clear(sc, TDA_PLL_SERIAL_1, PLL_SERIAL_1_SRL_MAN_IP);
475 1.3.2.2 martin tda19988_reg_clear(sc, TDA_PLL_SERIAL_3, PLL_SERIAL_3_SRL_DE);
476 1.3.2.2 martin tda19988_reg_write(sc, TDA_SERIALIZER, 0);
477 1.3.2.2 martin tda19988_reg_write(sc, TDA_HVF_CNTRL_1, HVF_CNTRL_1_VQR_FULL);
478 1.3.2.2 martin
479 1.3.2.2 martin tda19988_reg_write(sc, TDA_RPT_CNTRL, 0);
480 1.3.2.2 martin tda19988_reg_write(sc, TDA_SEL_CLK, SEL_CLK_SEL_VRF_CLK(0) |
481 1.3.2.2 martin SEL_CLK_SEL_CLK1 | SEL_CLK_ENA_SC_CLK);
482 1.3.2.2 martin
483 1.3.2.2 martin tda19988_reg_write(sc, TDA_PLL_SERIAL_2, PLL_SERIAL_2_SRL_NOSC(div) |
484 1.3.2.2 martin PLL_SERIAL_2_SRL_PR(0));
485 1.3.2.2 martin
486 1.3.2.2 martin tda19988_reg_set(sc, TDA_MAT_CONTRL, MAT_CONTRL_MAT_BP);
487 1.3.2.2 martin
488 1.3.2.2 martin tda19988_reg_write(sc, TDA_ANA_GENERAL, 0x09);
489 1.3.2.2 martin
490 1.3.2.2 martin tda19988_reg_clear(sc, TDA_TBG_CNTRL_0, TBG_CNTRL_0_SYNC_MTHD);
491 1.3.2.2 martin
492 1.3.2.2 martin /*
493 1.3.2.2 martin * Sync on rising HSYNC/VSYNC
494 1.3.2.2 martin */
495 1.3.2.2 martin reg = VIP_CNTRL_3_SYNC_HS;
496 1.3.2.2 martin if (mode->flags & DRM_MODE_FLAG_NHSYNC)
497 1.3.2.2 martin reg |= VIP_CNTRL_3_H_TGL;
498 1.3.2.2 martin if (mode->flags & DRM_MODE_FLAG_NVSYNC)
499 1.3.2.2 martin reg |= VIP_CNTRL_3_V_TGL;
500 1.3.2.2 martin tda19988_reg_write(sc, TDA_VIP_CNTRL_3, reg);
501 1.3.2.2 martin
502 1.3.2.2 martin reg = TBG_CNTRL_1_TGL_EN;
503 1.3.2.2 martin if (mode->flags & DRM_MODE_FLAG_NHSYNC)
504 1.3.2.2 martin reg |= TBG_CNTRL_1_H_TGL;
505 1.3.2.2 martin if (mode->flags & DRM_MODE_FLAG_NVSYNC)
506 1.3.2.2 martin reg |= TBG_CNTRL_1_V_TGL;
507 1.3.2.2 martin tda19988_reg_write(sc, TDA_TBG_CNTRL_1, reg);
508 1.3.2.2 martin
509 1.3.2.2 martin /* Program timing */
510 1.3.2.2 martin tda19988_reg_write(sc, TDA_VIDFORMAT, 0x00);
511 1.3.2.2 martin
512 1.3.2.2 martin tda19988_reg_write2(sc, TDA_REFPIX_MSB, ref_pix);
513 1.3.2.2 martin tda19988_reg_write2(sc, TDA_REFLINE_MSB, ref_line);
514 1.3.2.2 martin tda19988_reg_write2(sc, TDA_NPIX_MSB, n_pix);
515 1.3.2.2 martin tda19988_reg_write2(sc, TDA_NLINE_MSB, n_line);
516 1.3.2.2 martin
517 1.3.2.2 martin tda19988_reg_write2(sc, TDA_VS_LINE_STRT_1_MSB, vs1_line_start);
518 1.3.2.2 martin tda19988_reg_write2(sc, TDA_VS_PIX_STRT_1_MSB, vs1_pix_start);
519 1.3.2.2 martin tda19988_reg_write2(sc, TDA_VS_LINE_END_1_MSB, vs1_line_end);
520 1.3.2.2 martin tda19988_reg_write2(sc, TDA_VS_PIX_END_1_MSB, vs1_pix_stop);
521 1.3.2.2 martin tda19988_reg_write2(sc, TDA_VS_LINE_STRT_2_MSB, vs2_line_start);
522 1.3.2.2 martin tda19988_reg_write2(sc, TDA_VS_PIX_STRT_2_MSB, vs2_pix_start);
523 1.3.2.2 martin tda19988_reg_write2(sc, TDA_VS_LINE_END_2_MSB, vs2_line_end);
524 1.3.2.2 martin tda19988_reg_write2(sc, TDA_VS_PIX_END_2_MSB, vs2_pix_stop);
525 1.3.2.2 martin tda19988_reg_write2(sc, TDA_HS_PIX_START_MSB, hs_pix_start);
526 1.3.2.2 martin tda19988_reg_write2(sc, TDA_HS_PIX_STOP_MSB, hs_pix_stop);
527 1.3.2.2 martin tda19988_reg_write2(sc, TDA_VWIN_START_1_MSB, vwin1_line_start);
528 1.3.2.2 martin tda19988_reg_write2(sc, TDA_VWIN_END_1_MSB, vwin1_line_end);
529 1.3.2.2 martin tda19988_reg_write2(sc, TDA_VWIN_START_2_MSB, vwin2_line_start);
530 1.3.2.2 martin tda19988_reg_write2(sc, TDA_VWIN_END_2_MSB, vwin2_line_end);
531 1.3.2.2 martin tda19988_reg_write2(sc, TDA_DE_START_MSB, de_start);
532 1.3.2.2 martin tda19988_reg_write2(sc, TDA_DE_STOP_MSB, de_stop);
533 1.3.2.2 martin
534 1.3.2.2 martin if (sc->sc_version == TDA19988)
535 1.3.2.2 martin tda19988_reg_write(sc, TDA_ENABLE_SPACE, 0x00);
536 1.3.2.2 martin
537 1.3.2.2 martin /* must be last register set */
538 1.3.2.2 martin tda19988_reg_clear(sc, TDA_TBG_CNTRL_0, TBG_CNTRL_0_SYNC_ONCE);
539 1.3.2.2 martin }
540 1.3.2.2 martin
541 1.3.2.2 martin static int
542 1.3.2.2 martin tda19988_read_edid_block(struct tda19988_softc *sc, uint8_t *buf, int block)
543 1.3.2.2 martin {
544 1.3.2.2 martin int attempt, err;
545 1.3.2.2 martin uint8_t data;
546 1.3.2.2 martin
547 1.3.2.2 martin err = 0;
548 1.3.2.2 martin
549 1.3.2.2 martin tda19988_reg_set(sc, TDA_INT_FLAGS_2, INT_FLAGS_2_EDID_BLK_RD);
550 1.3.2.2 martin
551 1.3.2.2 martin /* Block 0 */
552 1.3.2.2 martin tda19988_reg_write(sc, TDA_DDC_ADDR, 0xa0);
553 1.3.2.2 martin tda19988_reg_write(sc, TDA_DDC_OFFS, (block % 2) ? 128 : 0);
554 1.3.2.2 martin tda19988_reg_write(sc, TDA_DDC_SEGM_ADDR, 0x60);
555 1.3.2.2 martin tda19988_reg_write(sc, TDA_DDC_SEGM, block / 2);
556 1.3.2.2 martin
557 1.3.2.2 martin tda19988_reg_write(sc, TDA_EDID_CTRL, 1);
558 1.3.2.2 martin tda19988_reg_write(sc, TDA_EDID_CTRL, 0);
559 1.3.2.2 martin
560 1.3.2.2 martin data = 0;
561 1.3.2.2 martin for (attempt = 0; attempt < MAX_READ_ATTEMPTS; attempt++) {
562 1.3.2.2 martin tda19988_reg_read(sc, TDA_INT_FLAGS_2, &data);
563 1.3.2.2 martin if (data & INT_FLAGS_2_EDID_BLK_RD)
564 1.3.2.2 martin break;
565 1.3.2.2 martin delay(1000);
566 1.3.2.2 martin }
567 1.3.2.2 martin
568 1.3.2.2 martin if (attempt == MAX_READ_ATTEMPTS) {
569 1.3.2.2 martin err = -1;
570 1.3.2.2 martin goto done;
571 1.3.2.2 martin }
572 1.3.2.2 martin
573 1.3.2.2 martin if (tda19988_block_read(sc, TDA_EDID_DATA0, buf, EDID_LENGTH) != 0) {
574 1.3.2.2 martin err = -1;
575 1.3.2.2 martin goto done;
576 1.3.2.2 martin }
577 1.3.2.2 martin
578 1.3.2.2 martin done:
579 1.3.2.2 martin tda19988_reg_clear(sc, TDA_INT_FLAGS_2, INT_FLAGS_2_EDID_BLK_RD);
580 1.3.2.2 martin
581 1.3.2.2 martin return (err);
582 1.3.2.2 martin }
583 1.3.2.2 martin
584 1.3.2.2 martin static int
585 1.3.2.2 martin tda19988_read_edid(struct tda19988_softc *sc)
586 1.3.2.2 martin {
587 1.3.2.2 martin int err;
588 1.3.2.2 martin int blocks, i;
589 1.3.2.2 martin uint8_t *buf, *edid;
590 1.3.2.2 martin
591 1.3.2.2 martin err = 0;
592 1.3.2.2 martin if (sc->sc_version == TDA19988)
593 1.3.2.2 martin tda19988_reg_clear(sc, TDA_TX4, TX4_PD_RAM);
594 1.3.2.2 martin
595 1.3.2.2 martin err = tda19988_read_edid_block(sc, sc->sc_edid, 0);
596 1.3.2.2 martin if (err)
597 1.3.2.2 martin goto done;
598 1.3.2.2 martin
599 1.3.2.2 martin blocks = sc->sc_edid[0x7e];
600 1.3.2.2 martin if (blocks > 0) {
601 1.3.2.2 martin if (sc->sc_edid_len != EDID_LENGTH*(blocks+1)) {
602 1.3.2.2 martin edid = kmem_zalloc(EDID_LENGTH*(blocks+1), KM_SLEEP);
603 1.3.2.2 martin memcpy(edid, sc->sc_edid, EDID_LENGTH);
604 1.3.2.2 martin kmem_free(sc->sc_edid, sc->sc_edid_len);
605 1.3.2.2 martin sc->sc_edid = edid;
606 1.3.2.2 martin sc->sc_edid_len = EDID_LENGTH*(blocks+1);
607 1.3.2.2 martin }
608 1.3.2.2 martin for (i = 0; i < blocks; i++) {
609 1.3.2.2 martin /* TODO: check validity */
610 1.3.2.2 martin buf = sc->sc_edid + EDID_LENGTH*(i+1);
611 1.3.2.2 martin err = tda19988_read_edid_block(sc, buf, i);
612 1.3.2.2 martin if (err)
613 1.3.2.2 martin goto done;
614 1.3.2.2 martin }
615 1.3.2.2 martin }
616 1.3.2.2 martin
617 1.3.2.2 martin done:
618 1.3.2.2 martin if (sc->sc_version == TDA19988)
619 1.3.2.2 martin tda19988_reg_set(sc, TDA_TX4, TX4_PD_RAM);
620 1.3.2.2 martin
621 1.3.2.2 martin return (err);
622 1.3.2.2 martin }
623 1.3.2.2 martin
624 1.3.2.2 martin static void
625 1.3.2.2 martin tda19988_start(struct tda19988_softc *sc)
626 1.3.2.2 martin {
627 1.3.2.2 martin device_t dev;
628 1.3.2.2 martin uint8_t data;
629 1.3.2.2 martin uint16_t ver;
630 1.3.2.2 martin
631 1.3.2.2 martin dev = sc->sc_dev;
632 1.3.2.2 martin
633 1.3.2.2 martin tda19988_cec_write(sc, TDA_CEC_ENAMODS, ENAMODS_RXSENS | ENAMODS_HDMI);
634 1.3.2.2 martin DELAY(1000);
635 1.3.2.2 martin tda19988_cec_read(sc, TDA_CEC_RXSHPDLEV, &data);
636 1.3.2.2 martin
637 1.3.2.2 martin /* Reset core */
638 1.3.2.2 martin tda19988_reg_set(sc, TDA_SOFTRESET, 3);
639 1.3.2.2 martin DELAY(100);
640 1.3.2.2 martin tda19988_reg_clear(sc, TDA_SOFTRESET, 3);
641 1.3.2.2 martin DELAY(100);
642 1.3.2.2 martin
643 1.3.2.2 martin /* reset transmitter: */
644 1.3.2.2 martin tda19988_reg_set(sc, TDA_MAIN_CNTRL0, MAIN_CNTRL0_SR);
645 1.3.2.2 martin tda19988_reg_clear(sc, TDA_MAIN_CNTRL0, MAIN_CNTRL0_SR);
646 1.3.2.2 martin
647 1.3.2.2 martin /* PLL registers common configuration */
648 1.3.2.2 martin tda19988_reg_write(sc, TDA_PLL_SERIAL_1, 0x00);
649 1.3.2.2 martin tda19988_reg_write(sc, TDA_PLL_SERIAL_2, PLL_SERIAL_2_SRL_NOSC(1));
650 1.3.2.2 martin tda19988_reg_write(sc, TDA_PLL_SERIAL_3, 0x00);
651 1.3.2.2 martin tda19988_reg_write(sc, TDA_SERIALIZER, 0x00);
652 1.3.2.2 martin tda19988_reg_write(sc, TDA_BUFFER_OUT, 0x00);
653 1.3.2.2 martin tda19988_reg_write(sc, TDA_PLL_SCG1, 0x00);
654 1.3.2.2 martin tda19988_reg_write(sc, TDA_SEL_CLK, SEL_CLK_SEL_CLK1 | SEL_CLK_ENA_SC_CLK);
655 1.3.2.2 martin tda19988_reg_write(sc, TDA_PLL_SCGN1, 0xfa);
656 1.3.2.2 martin tda19988_reg_write(sc, TDA_PLL_SCGN2, 0x00);
657 1.3.2.2 martin tda19988_reg_write(sc, TDA_PLL_SCGR1, 0x5b);
658 1.3.2.2 martin tda19988_reg_write(sc, TDA_PLL_SCGR2, 0x00);
659 1.3.2.2 martin tda19988_reg_write(sc, TDA_PLL_SCG2, 0x10);
660 1.3.2.2 martin
661 1.3.2.2 martin /* Write the default value MUX register */
662 1.3.2.2 martin tda19988_reg_write(sc, TDA_MUX_VP_VIP_OUT, 0x24);
663 1.3.2.2 martin
664 1.3.2.2 martin ver = 0;
665 1.3.2.2 martin tda19988_reg_read(sc, TDA_VERSION, &data);
666 1.3.2.2 martin ver |= data;
667 1.3.2.2 martin tda19988_reg_read(sc, TDA_VERSION_MSB, &data);
668 1.3.2.2 martin ver |= (data << 8);
669 1.3.2.2 martin
670 1.3.2.2 martin /* Clear feature bits */
671 1.3.2.2 martin sc->sc_version = ver & ~0x30;
672 1.3.2.2 martin switch (sc->sc_version) {
673 1.3.2.2 martin case TDA19988:
674 1.3.2.2 martin device_printf(dev, "TDA19988\n");
675 1.3.2.2 martin break;
676 1.3.2.2 martin default:
677 1.3.2.2 martin device_printf(dev, "Unknown device: %04x\n", sc->sc_version);
678 1.3.2.2 martin return;
679 1.3.2.2 martin }
680 1.3.2.2 martin
681 1.3.2.2 martin tda19988_reg_write(sc, TDA_DDC_CTRL, DDC_ENABLE);
682 1.3.2.2 martin tda19988_reg_write(sc, TDA_TX3, 39);
683 1.3.2.2 martin
684 1.3.2.2 martin tda19988_cec_write(sc, TDA_CEC_FRO_IM_CLK_CTRL,
685 1.3.2.2 martin CEC_FRO_IM_CLK_CTRL_GHOST_DIS | CEC_FRO_IM_CLK_CTRL_IMCLK_SEL);
686 1.3.2.2 martin
687 1.3.2.2 martin /* Default values for RGB 4:4:4 mapping */
688 1.3.2.2 martin tda19988_reg_write(sc, TDA_VIP_CNTRL_0, 0x23);
689 1.3.2.2 martin tda19988_reg_write(sc, TDA_VIP_CNTRL_1, 0x01);
690 1.3.2.2 martin tda19988_reg_write(sc, TDA_VIP_CNTRL_2, 0x45);
691 1.3.2.2 martin }
692 1.3.2.2 martin
693 1.3.2.2 martin static enum drm_connector_status
694 1.3.2.2 martin tda19988_connector_detect(struct drm_connector *connector, bool force)
695 1.3.2.2 martin {
696 1.3.2.2 martin struct tda19988_connector *tda_connector = to_tda_connector(connector);
697 1.3.2.2 martin struct tda19988_softc * const sc = tda_connector->sc;
698 1.3.2.2 martin enum drm_connector_status status;
699 1.3.2.2 martin uint8_t data = 0;
700 1.3.2.2 martin
701 1.3.2.2 martin iic_acquire_bus(sc->sc_i2c, cold ? I2C_F_POLL : 0);
702 1.3.2.2 martin tda19988_cec_read(sc, TDA_CEC_RXSHPDLEV, &data);
703 1.3.2.2 martin iic_release_bus(sc->sc_i2c, cold ? I2C_F_POLL : 0);
704 1.3.2.2 martin
705 1.3.2.2 martin status = (data & RXSHPDLEV_HPD) ?
706 1.3.2.2 martin connector_status_connected :
707 1.3.2.2 martin connector_status_disconnected;
708 1.3.2.2 martin
709 1.3.2.2 martin /* On connect, invalidate the last EDID */
710 1.3.2.2 martin if (status == connector_status_connected &&
711 1.3.2.2 martin sc->sc_last_status != connector_status_connected)
712 1.3.2.2 martin sc->sc_edid_valid = false;
713 1.3.2.2 martin
714 1.3.2.2 martin sc->sc_last_status = status;
715 1.3.2.2 martin
716 1.3.2.2 martin return status;
717 1.3.2.2 martin }
718 1.3.2.2 martin
719 1.3.2.2 martin static void
720 1.3.2.2 martin tda19988_connector_destroy(struct drm_connector *connector)
721 1.3.2.2 martin {
722 1.3.2.2 martin drm_connector_unregister(connector);
723 1.3.2.2 martin drm_connector_cleanup(connector);
724 1.3.2.2 martin }
725 1.3.2.2 martin
726 1.3.2.2 martin static const struct drm_connector_funcs tda19988_connector_funcs = {
727 1.3.2.2 martin .dpms = drm_helper_connector_dpms,
728 1.3.2.2 martin .detect = tda19988_connector_detect,
729 1.3.2.2 martin .fill_modes = drm_helper_probe_single_connector_modes,
730 1.3.2.2 martin .destroy = tda19988_connector_destroy,
731 1.3.2.2 martin };
732 1.3.2.2 martin
733 1.3.2.2 martin static int
734 1.3.2.2 martin tda19988_connector_get_modes(struct drm_connector *connector)
735 1.3.2.2 martin {
736 1.3.2.2 martin struct tda19988_connector *tda_connector = to_tda_connector(connector);
737 1.3.2.2 martin struct tda19988_softc * const sc = tda_connector->sc;
738 1.3.2.2 martin struct edid *pedid = NULL;
739 1.3.2.2 martin int error;
740 1.3.2.2 martin
741 1.3.2.2 martin if (sc->sc_edid_valid) {
742 1.3.2.2 martin pedid = (struct edid *)sc->sc_edid;
743 1.3.2.2 martin } else {
744 1.3.2.2 martin iic_acquire_bus(sc->sc_i2c, cold ? I2C_F_POLL : 0);
745 1.3.2.2 martin if (tda19988_read_edid(sc) == 0)
746 1.3.2.2 martin pedid = (struct edid *)sc->sc_edid;
747 1.3.2.2 martin iic_release_bus(sc->sc_i2c, cold ? I2C_F_POLL : 0);
748 1.3.2.2 martin sc->sc_edid_valid = true;
749 1.3.2.2 martin }
750 1.3.2.2 martin
751 1.3.2.2 martin drm_mode_connector_update_edid_property(connector, pedid);
752 1.3.2.2 martin if (pedid == NULL)
753 1.3.2.2 martin return 0;
754 1.3.2.2 martin
755 1.3.2.2 martin error = drm_add_edid_modes(connector, pedid);
756 1.3.2.2 martin drm_edid_to_eld(connector, pedid);
757 1.3.2.2 martin
758 1.3.2.2 martin return error;
759 1.3.2.2 martin }
760 1.3.2.2 martin
761 1.3.2.2 martin static struct drm_encoder *
762 1.3.2.2 martin tda19988_connector_best_encoder(struct drm_connector *connector)
763 1.3.2.2 martin {
764 1.3.2.2 martin int enc_id = connector->encoder_ids[0];
765 1.3.2.2 martin struct drm_mode_object *obj;
766 1.3.2.2 martin struct drm_encoder *encoder = NULL;
767 1.3.2.2 martin
768 1.3.2.2 martin if (enc_id) {
769 1.3.2.2 martin obj = drm_mode_object_find(connector->dev, enc_id,
770 1.3.2.2 martin DRM_MODE_OBJECT_ENCODER);
771 1.3.2.2 martin if (obj == NULL)
772 1.3.2.2 martin return NULL;
773 1.3.2.2 martin encoder = obj_to_encoder(obj);
774 1.3.2.2 martin }
775 1.3.2.2 martin
776 1.3.2.2 martin return encoder;
777 1.3.2.2 martin }
778 1.3.2.2 martin
779 1.3.2.2 martin static const struct drm_connector_helper_funcs tda19988_connector_helper_funcs = {
780 1.3.2.2 martin .get_modes = tda19988_connector_get_modes,
781 1.3.2.2 martin .best_encoder = tda19988_connector_best_encoder,
782 1.3.2.2 martin };
783 1.3.2.2 martin
784 1.3.2.2 martin static int
785 1.3.2.2 martin tda19988_bridge_attach(struct drm_bridge *bridge)
786 1.3.2.2 martin {
787 1.3.2.2 martin struct tda19988_softc *sc = bridge->driver_private;
788 1.3.2.2 martin struct tda19988_connector *tda_connector = &sc->sc_connector;
789 1.3.2.2 martin struct drm_connector *connector = &tda_connector->base;
790 1.3.2.2 martin int error;
791 1.3.2.2 martin
792 1.3.2.2 martin tda_connector->sc = sc;
793 1.3.2.2 martin
794 1.3.2.2 martin connector->polled = DRM_CONNECTOR_POLL_CONNECT | DRM_CONNECTOR_POLL_DISCONNECT;
795 1.3.2.2 martin connector->interlace_allowed = 1;
796 1.3.2.2 martin connector->doublescan_allowed = 0;
797 1.3.2.2 martin
798 1.3.2.2 martin drm_connector_init(bridge->dev, connector, &tda19988_connector_funcs,
799 1.3.2.2 martin DRM_MODE_CONNECTOR_HDMIA);
800 1.3.2.2 martin drm_connector_helper_add(connector, &tda19988_connector_helper_funcs);
801 1.3.2.2 martin
802 1.3.2.2 martin error = drm_mode_connector_attach_encoder(connector, bridge->encoder);
803 1.3.2.2 martin if (error != 0)
804 1.3.2.2 martin return error;
805 1.3.2.2 martin
806 1.3.2.2 martin return drm_connector_register(connector);
807 1.3.2.2 martin }
808 1.3.2.2 martin
809 1.3.2.2 martin static void
810 1.3.2.2 martin tda19988_bridge_enable(struct drm_bridge *bridge)
811 1.3.2.2 martin {
812 1.3.2.2 martin struct tda19988_softc * const sc = bridge->driver_private;
813 1.3.2.2 martin
814 1.3.2.2 martin fdtbus_pinctrl_set_config(sc->sc_phandle, "default");
815 1.3.2.2 martin }
816 1.3.2.2 martin
817 1.3.2.2 martin static void
818 1.3.2.2 martin tda19988_bridge_pre_enable(struct drm_bridge *bridge)
819 1.3.2.2 martin {
820 1.3.2.2 martin }
821 1.3.2.2 martin
822 1.3.2.2 martin static void
823 1.3.2.2 martin tda19988_bridge_disable(struct drm_bridge *bridge)
824 1.3.2.2 martin {
825 1.3.2.2 martin struct tda19988_softc * const sc = bridge->driver_private;
826 1.3.2.2 martin
827 1.3.2.2 martin fdtbus_pinctrl_set_config(sc->sc_phandle, "off");
828 1.3.2.2 martin }
829 1.3.2.2 martin
830 1.3.2.2 martin static void
831 1.3.2.2 martin tda19988_bridge_post_disable(struct drm_bridge *bridge)
832 1.3.2.2 martin {
833 1.3.2.2 martin }
834 1.3.2.2 martin
835 1.3.2.2 martin static void
836 1.3.2.2 martin tda19988_bridge_mode_set(struct drm_bridge *bridge,
837 1.3.2.2 martin struct drm_display_mode *mode, struct drm_display_mode *adjusted_mode)
838 1.3.2.2 martin {
839 1.3.2.2 martin struct tda19988_softc * const sc = bridge->driver_private;
840 1.3.2.2 martin
841 1.3.2.2 martin iic_acquire_bus(sc->sc_i2c, cold ? I2C_F_POLL : 0);
842 1.3.2.2 martin tda19988_init_encoder(sc, adjusted_mode);
843 1.3.2.2 martin iic_release_bus(sc->sc_i2c, cold ? I2C_F_POLL : 0);
844 1.3.2.2 martin }
845 1.3.2.2 martin
846 1.3.2.2 martin static bool
847 1.3.2.2 martin tda19988_bridge_mode_fixup(struct drm_bridge *bridge,
848 1.3.2.2 martin const struct drm_display_mode *mode, struct drm_display_mode *adjusted_mode)
849 1.3.2.2 martin {
850 1.3.2.2 martin return true;
851 1.3.2.2 martin }
852 1.3.2.2 martin
853 1.3.2.2 martin static const struct drm_bridge_funcs tda19988_bridge_funcs = {
854 1.3.2.2 martin .attach = tda19988_bridge_attach,
855 1.3.2.2 martin .enable = tda19988_bridge_enable,
856 1.3.2.2 martin .pre_enable = tda19988_bridge_pre_enable,
857 1.3.2.2 martin .disable = tda19988_bridge_disable,
858 1.3.2.2 martin .post_disable = tda19988_bridge_post_disable,
859 1.3.2.2 martin .mode_set = tda19988_bridge_mode_set,
860 1.3.2.2 martin .mode_fixup = tda19988_bridge_mode_fixup,
861 1.3.2.2 martin };
862 1.3.2.2 martin
863 1.3.2.2 martin static int
864 1.3.2.2 martin tda19988_ep_activate(device_t dev, struct fdt_endpoint *ep, bool activate)
865 1.3.2.2 martin {
866 1.3.2.2 martin struct tda19988_softc *sc = device_private(dev);
867 1.3.2.2 martin struct fdt_endpoint *in_ep = fdt_endpoint_remote(ep);
868 1.3.2.2 martin struct drm_encoder *encoder;
869 1.3.2.2 martin int error;
870 1.3.2.2 martin
871 1.3.2.2 martin if (!activate)
872 1.3.2.2 martin return EINVAL;
873 1.3.2.2 martin
874 1.3.2.2 martin if (fdt_endpoint_port_index(ep) != TDA19988_PORT_INPUT)
875 1.3.2.2 martin return EINVAL;
876 1.3.2.2 martin
877 1.3.2.2 martin switch (fdt_endpoint_type(in_ep)) {
878 1.3.2.2 martin case EP_DRM_ENCODER:
879 1.3.2.2 martin encoder = fdt_endpoint_get_data(in_ep);
880 1.3.2.2 martin break;
881 1.3.2.2 martin default:
882 1.3.2.2 martin encoder = NULL;
883 1.3.2.2 martin break;
884 1.3.2.2 martin }
885 1.3.2.2 martin
886 1.3.2.2 martin if (encoder == NULL)
887 1.3.2.2 martin return EINVAL;
888 1.3.2.2 martin
889 1.3.2.2 martin sc->sc_bridge.driver_private = sc;
890 1.3.2.2 martin sc->sc_bridge.funcs = &tda19988_bridge_funcs;
891 1.3.2.2 martin sc->sc_bridge.encoder = encoder;
892 1.3.2.2 martin error = drm_bridge_attach(encoder->dev, &sc->sc_bridge);
893 1.3.2.2 martin if (error != 0)
894 1.3.2.2 martin return EIO;
895 1.3.2.2 martin
896 1.3.2.2 martin encoder->bridge = &sc->sc_bridge;
897 1.3.2.2 martin
898 1.3.2.2 martin return 0;
899 1.3.2.2 martin }
900 1.3.2.2 martin
901 1.3.2.2 martin static void *
902 1.3.2.2 martin tda19988_ep_get_data(device_t dev, struct fdt_endpoint *ep)
903 1.3.2.2 martin {
904 1.3.2.2 martin struct tda19988_softc *sc = device_private(dev);
905 1.3.2.2 martin
906 1.3.2.2 martin return &sc->sc_bridge;
907 1.3.2.2 martin }
908 1.3.2.2 martin
909 1.3.2.2 martin static void
910 1.3.2.2 martin tda19988_attach(device_t parent, device_t self, void *aux)
911 1.3.2.2 martin {
912 1.3.2.2 martin struct tda19988_softc *sc = device_private(self);
913 1.3.2.2 martin struct i2c_attach_args * const ia = aux;
914 1.3.2.2 martin const int phandle = ia->ia_cookie;
915 1.3.2.2 martin
916 1.3.2.2 martin sc->sc_dev = self;
917 1.3.2.2 martin sc->sc_phandle = phandle;
918 1.3.2.2 martin sc->sc_i2c = ia->ia_tag;
919 1.3.2.2 martin sc->sc_addr = ia->ia_addr;
920 1.3.2.2 martin sc->sc_cec_addr = 0x34; /* hardcoded */
921 1.3.2.2 martin sc->sc_current_page = 0xff;
922 1.3.2.2 martin sc->sc_edid = kmem_zalloc(EDID_LENGTH, KM_SLEEP);
923 1.3.2.2 martin sc->sc_edid_len = EDID_LENGTH;
924 1.3.2.2 martin sc->sc_edid_valid = false;
925 1.3.2.2 martin sc->sc_last_status = connector_status_unknown;
926 1.3.2.2 martin
927 1.3.2.2 martin aprint_naive("\n");
928 1.3.2.2 martin aprint_normal(": NXP TDA19988 HDMI transmitter\n");
929 1.3.2.2 martin
930 1.3.2.2 martin iic_acquire_bus(sc->sc_i2c, I2C_F_POLL);
931 1.3.2.2 martin tda19988_start(sc);
932 1.3.2.2 martin iic_release_bus(sc->sc_i2c, I2C_F_POLL);
933 1.3.2.2 martin
934 1.3.2.2 martin sc->sc_ports.dp_ep_activate = tda19988_ep_activate;
935 1.3.2.2 martin sc->sc_ports.dp_ep_get_data = tda19988_ep_get_data;
936 1.3.2.2 martin fdt_ports_register(&sc->sc_ports, self, phandle, EP_DRM_ENCODER);
937 1.3.2.2 martin }
938 1.3.2.2 martin
939 1.3.2.2 martin CFATTACH_DECL_NEW(tdahdmi, sizeof(struct tda19988_softc),
940 1.3.2.2 martin tda19988_match, tda19988_attach, NULL, NULL);
941